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相关概念视频

X-ray Crystallography02:18

X-ray Crystallography

26.2K
The size of the unit cell and the arrangement of atoms in a crystal may be determined from measurements of the diffraction of X-rays by the crystal, termed X-ray crystallography.
Diffraction
Diffraction is the change in the direction of travel experienced by an electromagnetic wave when it encounters a physical barrier whose dimensions are comparable to those of the wavelength of the light. X-rays are electromagnetic radiation with wavelengths about as long as the distance between neighboring...
26.2K
Common Ion Effect03:24

Common Ion Effect

46.9K
Compared with pure water, the solubility of an ionic compound is less in aqueous solutions containing a common ion (one also produced by dissolution of the ionic compound). This is an example of a phenomenon known as the common ion effect, which is a consequence of the law of mass action that may be explained using Le Châtelier’s principle. Consider the dissolution of silver iodide:
46.9K
Ionic Crystal Structures02:42

Ionic Crystal Structures

17.1K
Ionic crystals consist of two or more different kinds of ions that usually have different sizes. The packing of these ions into a crystal structure is more complex than the packing of metal atoms that are the same size.
Most monatomic ions behave as charged spheres, and their attraction for ions of opposite charge is the same in every direction. Consequently, stable structures for ionic compounds result (1) when ions of one charge are surrounded by as many ions as possible of the opposite...
17.1K
Crystal Growth: Principles of Crystallization01:25

Crystal Growth: Principles of Crystallization

5.0K
Crystallization is a phase transformation process in which crystals are precipitated from a supersaturated solution or formed from other sources. During crystallization, atoms or molecules arrange themselves into a well-defined, rigid crystal lattice to minimize energy.
Initiating crystallization involves manipulating the concentration of the solute and the temperature of the solution. Since crystal growth occurs when the ratio of concentration and solubility of the solute in the solvent...
5.0K
Crystal Field Theory - Octahedral Complexes02:58

Crystal Field Theory - Octahedral Complexes

30.9K
Crystal Field Theory
To explain the observed behavior of transition metal complexes (such as colors), a model involving electrostatic interactions between the electrons from the ligands and the electrons in the unhybridized d orbitals of the central metal atom has been developed. This electrostatic model is crystal field theory (CFT). It helps to understand, interpret, and predict the colors, magnetic behavior, and some structures of coordination compounds of transition metals.
CFT focuses on...
30.9K
Crystal Field Theory - Tetrahedral and Square Planar Complexes02:46

Crystal Field Theory - Tetrahedral and Square Planar Complexes

48.6K
Tetrahedral Complexes
Crystal field theory (CFT) is applicable to molecules in geometries other than octahedral. In octahedral complexes, the lobes of the dx2−y2 and dz2 orbitals point directly at the ligands. For tetrahedral complexes, the d orbitals remain in place, but with only four ligands located between the axes. None of the orbitals points directly at the tetrahedral ligands. However, the dx2−y2 and dz2 orbitals (along the Cartesian axes) overlap with the ligands less than the dxy,...
48.6K

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Author Spotlight: High-Throughput Screening to Obtain Crystal Hits for Protein Crystallography
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Author Spotlight: High-Throughput Screening to Obtain Crystal Hits for Protein Crystallography

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在晶体学和晶体光学中常见的误解.

Lluís Casas1

  • 1Unitat de Cristallografia i Mineralogia, Departament de Geologia Universitat Autònoma de Barcelona (UAB) Edifici C Cerdanyola del Vallès Catalonia08193 Spain.

Journal of applied crystallography
|February 6, 2026
PubMed
概括

许多科学论文错误地使用诸如"X射线光谱"之类的术语来描述衍射模式. 本研究分析了六个常见的晶体学误解,以改善学术沟通和教学.

科学领域:

  • 晶体学 晶体学是指结晶学.
  • 矿物质光学 在矿物质光学.
  • 晶体光学 晶体光学是什么?

背景情况:

  • 科学文献中的误解是常见的,影响了准确的沟通.
  • 具体的错误包括称X射线衍射模式为"光谱"和滥用晶体光学术语.
  • 这些错误的普遍性影响了科学理解和教育.

研究的目的:

  • 识别和分析六个在晶体学和晶体光学中经常出现的误解.
  • 评估这些误解在同行评审的科学文献中的普遍性.
  • 促进校正这些错误的学术交流和教学.

主要方法:

  • 分析六个常见的结晶学误解.
  • 在同行评审文献中的误解流行率的统计评估.
  • 对晶体光学和X射线衍射术语的审查.

主要成果:

  • 五分之一的论文错误地将X射线衍射模式称为"X射线光谱".
  • 像"平行尼科尔"这样的术语在晶体光学中经常被滥用.
  • 在极化显微镜观测中,区域划分有时被误认为是双胞胎.

结论:

关键词:
在X射线中,X射线的衍射效果是不同的.在 XRD 频谱中.细胞限制 细胞限制晶体光学是如何使用的误解 误解 误解 误解 误解

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Optimization of Crystal Growth for Neutron Macromolecular Crystallography

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Optimization of Crystal Growth for Neutron Macromolecular Crystallography
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Optimization of Crystal Growth for Neutron Macromolecular Crystallography

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  • 纠正这些误解对于准确的科学传播和教育至关重要.
  • 了解和解决误解可以成为一个有价值的教育工具.
  • 这项研究旨在通过改善基础科学理解来增强人才发展.